[0001] The invention relates to a switch, and more particularly to an optical switch that
               can be shifted to different operating modes using a slide disc.
 
            [0002] Referring to Fig.1, a conventional position-sensing device for a digital camera,
               as disclosed in Taiwanese Patent Publication No. 
568480, includes an optical module 11 and a control module 12. The optical module 11 has
               a light source 111, and two light-receiving devices 112, 113 disposed respectively
               on two opposite sides of the light source 111. The control module 12 has a main body
               121, a receiving chamber 122 formed in the main body 121, and a reflective ball body
               123 disposed rollably in the receiving chamber 122. When the light source 111 emits
               light, the light can be reflected to the light-receiving device 112 or 113 through
               the reflective ball body 123. According to the condition of light received by the
               light-receiving device 112 or 113, the position of the digital camera can be detected.
 
            [0003] However, since an outer surface of the reflective ball body 123 is curved, the light
               will diverge along the curved surface of the reflective ball body 123, so that the
               position of the reflective ball body 123 and the angle of light after reflection cannot
               be easily controlled. Hence, the light-receiving devices 112 and 113 that are disposed
               on the same side as the light source 111 may not easily sense the light rays.
 
            [0004] Referring to Fig. 2, another conventional position-sensing device similarly includes
               an optical module 13 and a control module 14. The optical module 13 has a light source
               131, and two light-receiving devices 132, 133 that are coplanar but not collinear
               with the light source 131. A reflective plate (not shown) faces the optical module
               13. The control module 14 has a main body 142 disposed between the optical module
               13 and the reflective plate, a receiving chamber 143 formed in the main body 142,
               and a ball body 144 disposed reliably in the receiving chamber 143. When the light
               source 131 emits light, the light can be reflected to the light-receiving device 132
               or 133 through the reflective plate. According to the condition of light received
               by the light-receiving device 112 or 113, the position of the digital camera can be
               detected. Similarly, since an outer surface of the ball body 144 is curved, the position
               of the ball body 144 and the angle of light after reflection cannot be easily controlled.
 
            [0005] Therefore, an object of the present invention is to provide an optical switch that
               is sensitive and that can be operated accurately.
 
            [0006] According to this invention, an optical switch comprises a housing, a sensor unit,
               and a slide disc. The housing has a reflecting surface, a mounting surface facing
               the reflecting surface, and a receiving chamber formed between the reflecting and
               mounting surfaces. The mounting surface is recessed to form at least two mounting
               recesses. The sensor unit includes a light emitter and at least one light receiver
               disposed respectively in the mounting recesses and exposed from the mounting surface
               to face the reflecting surface. The light emitter is capable of emitting light to
               the light receiver through a reflection of the reflecting surface. The slide disc
               is disposed slidably but not rollably in the receiving chamber, and is slidable between
               blocking and unblocking positions. In the blocking position, the slide disc blocks
               the light emitted from the light emitter to the light receiver. In the unblocking
               position, the slide disc allows the light emitted from the light emitter to be received
               by the light receiver.
 
            [0007] Other features and advantages of the present invention will become apparent in the
               following detailed description of the preferred embodiments with reference to the
               accompanying drawings, of which:
               
               
Fig. 1 is a sectional view of a conventional position-sensing device;
               Fig. 2 is a sectional view of another conventional position-sensing device;
               Fig. 3 is an exploded perspective view of an optical switch according to the first
                  preferred embodiment of the present invention;
               Fig. 4 is an assembled perspective view of the first preferred embodiment, with a
                  portion of the optical device removed for clarity;
               Fig. 5 is a schematic top view of the first preferred embodiment;
               Fig. 6 is a sectional view of the first preferred embodiment taken along line VI-VI
                  of Fig. 5;
               Fig. 7 is a view similar to Fig. 5, but illustrating a slide disc moving to a second
                  position;
               Fig. 8 is a sectional view of the first preferred embodiment taken along line VIII-VIII
                  of Fig. 7;
               Fig. 9 is a view similar to Fig. 5, but illustrating a slide disc moving to a third
                  position;
               Fig. 10 is a sectional view of the first preferred embodiment taken along line X-X
                  of Fig. 9;
               Fig. 11 is a view similar to Fig. 5, but illustrating a slide disc moving to a fourth
                  position;
               Fig. 12 is a sectional view of the first preferred embodiment taken along line XII-XII
                  of Fig. 11;
               Fig. 13 is an exploded perspective view of an optical switch according to the second
                  preferred embodiment of the present invention;
               Fig. 14 is a sectional view of an optical switch according to the third preferred
                  embodiment of the present invention; and
               Fig. 15 is another sectional view of the third preferred embodiment.
 
            [0008] Before the present invention is described in greater detail, it should be noted that
               like elements are denoted by the same reference numerals throughout the disclosure.
 
            [0009] Referring to Figs. 3 to 12, an optical switch according to the first preferred embodiment
               of the present invention is shown to comprise a housing 2, a sensor unit 3, a slide
               disc 4, and a shutter plate 5.
 
            [0010] The housing 2 includes a casing part 21 and a cover part 22. The casing part 21 has
               one open end 213, a receiving chamber 20, and a mounting surface 211. In this embodiment,
               the mounting surface 211 is recessed and forms three spaced-apart mounting recesses
               212. The cover part 22 covers the open end 213, and has a reflecting surface 221 facing
               the mounting surface 211. The receiving chamber 20 is formed between the reflecting
               and mounting surfaces 221, 211, and has four curved corners 201, 202, 203, 204 (see
               Fig. 5). The mounting recesses 212 are respectively proximate to three of the curved
               corners 201, 202, 203.
 
            [0011] The sensor unit 3, in this embodiment, includes a light emitter 31 and two light
               receivers 32, 33 disposed respectively in the mounting recesses 212 and exposed from
               the mounting surface 211 to face the reflecting surface 221. The light emitter 31
               is capable of emitting light that is reflected to the light receivers 32, 33 by the
               reflecting surface 221.
 
            [0012] The slide disc 4, in this embodiment, is configured as a cylindrical disk that is
               disposed in the receiving chamber 20, that is slidable but not rollable on the mounting
               surface 211, and that has a flat face 41. The slide disc 4 is slidable from one of
               the corners 201~204 to another one of the corners 201~204.
 
            [0013] The shutter plate 5 is disposed over the mounting surface 211 within the receiving
               chamber 20. The flat face 41 of the slide disc 4 is slidable on the shutter plate
               5. The shutter plate 5 is used to limit the path of light exiting from the mounting
               recess 212 that contains the light emitter 31 and the paths of light entering the
               mounting recesses 212 that contain the respective light receivers 32, 33. As such,
               light scattering can be prevented. The shutter plate 5, in this embodiment, has three
               light-penetrating portions 51, 52, 53 aligned with the mounting recesses 212, respectively.
               Each light-penetrating portion 51, 52, 53 is configured as a through hole having a
               diameter smaller than that of the slide disc 4.
 
            [0014] The distance between the shutter plate 5 and the cover part 22 or the height of the
               receiving chamber 20 is slightly larger than the height of the slide disc 4, as best
               shown in Fig. 6, so that the slide disc 4 can only slide on one of the shutter plate
               5 and the reflecting surface 221, and cannot turn over within the receiving chamber
               20.
 
            [0015] With reference to Figs. 5 and 6, when the optical switch of the present invention
               vibrates due to an external force, and the slide disc 4 slides to the corner 201 of
               the receiving chamber 20, the slide disc 4 will cover the light-penetrating portion
               52 of the shutter plate 5 and prevent the light emitted from the light emitter 31
               from being reflected to the light receiver 32. The slide disc 4 is disposed in a first
               blocking position at this time. Since only the light- penetrating portion 52 is covered
               by the slide disc 4, the light emitted from the light emitter 31 can pass through
               the light-penetrating portion 51 and be reflected by the reflecting surface 221 to
               pass through the light-penetrating portion 53 to be received by the light receiver
               33. Hence, the light receivers 32, 33 will simultaneously and respectively output
               electrical signals for conducting a first operating mode of the optical switch of
               the present invention.
 
            [0016] With reference to Figs. 7 and 8, when the slide disc 4 slides to the corner 202 of
               the receiving chamber 20, the slide disc 4 will cover the light-penetrating portion
               51 of the shutter plate 5 and prevent the light emitted from the light emitter 31
               from being reflected to the two light receivers 32, 33. The slide disc 4 is disposed
               in a second blocking position at this time. Hence, the light receivers 32, 33 will
               simultaneously and respectively output electrical signals for conducting a second
               operating mode of the optical switch of the present invention.
 
            [0017] With reference to Figs. 9 and 10, when the slide disc 4 slides to the corner 203
               of the receiving chamber 20, the slide disc 4 will cover the light-penetrating portion
               53 of the shutter plate 5 and prevent the light receiver 33. The slide disc 4 is disposed
               in a third blocking position at this time. Since only the light- penetrating portion
               53 is covered by the slide disc 4, the light emitted from the light emitter 31 can
               pass through the light-penetrating portion 51 and be reflected by the reflecting surface
               221 to pass through the light-penetrating portion 52 to be received by the light receiver
               32. Hence, the light receivers 32, 33 can simultaneously and respectively output electrical
               signals for conducting a third operating mode of the optical switch of the present
               invention.
 
            [0018] With reference to Figs. 11 and 12, when the slide disc 4 slides to the corner 204
               of the receiving chamber 20, the slide disc 4 will not cover any of the light-penetrating
               portions 51, 52, 53 of the shutter plate 5, thereby being disposed in an unblocking
               position. The light emitted from the light emitter 31 can pass through the light-penetrating
               portion 51 and be reflected by the reflecting surface 221 to be received by the two
               light receivers 32, 33. Hence, the light receivers 32, 33 can simultaneously and respectively
               output electrical signals for conducting a fourth operating mode of the optical switch
               of the present invention.
 
            [0019] Referring to Fig. 13, an optical switch according to the second preferred embodiment
               of the present invention is shown to be similar to the first preferred embodiment.
               However, in this embodiment, the shutter plate 5 includes four light-penetrating portions
               51, 52, 53, 54 that are spaced apart from each other. Through such a configuration,
               the shutter plate 5 can be disposed inside the casing part 22 without having to consider
               which face is facing the mounting surface 211. Hence, simplicity during assembly is
               enhanced.
 
            [0020] Referring to Figs. 14 and 15, an optical switch according to the third preferred
               embodiment of the present invention is shown to be similar to the first preferred
               embodiment. Particularly, the optical switch comprises a housing 2, a sensor unit
               3, and a slide disc 4. However, in this embodiment, the sensor unit 3 has only one
               light receiver 35, and the light emitter 34 and the light receiver 35 are arranged
               in a straight line.
 
            [0021] When the housing 2 is turned, as shown in Fig. 14, the slide disc 4 can move to an
               unblocking position so that the light emitted from the light emitter 34 can be received
               by the light receiver 35. The light receiver 35, at this time, can output an electrical
               signal for conducting a fifth operating mode of the optical switch of the present
               invention. When the housing 2 is turned, as shown in Fig. 15, the slide disc 4 can
               move to a blocking position so that the light emitted from the light emitter 34 cannot
               be received by the light receiver 35. The light receiver 35, at this time, can output
               an electrical signal for conducting a sixth operating mode of the optical switch of
               the present invention.
 
            [0022] The advantages and efficiencies of the optical switch of the present invention can
               be summarized as follows:
               
               
                  - 1. Since the slide disc 4 of the present invention is configured as a cylindrical
                     disk, not only is the height of the whole structure reduced, the flat face 41 of the
                     slide disc 4 can readily slide over any one of the light-penetrating portions 51,
                     52, 53, 54 of the shutter plate 5, so that the light-penetrating portions 51, 52,
                     53, 54 will not interfere with or affect the sliding movement of the slide disc 4
                     on the shutter plate 5. Hence, the slide disc 4 can slide smoothly to the right position
                     according to an angle of rotation of the housing 2. The sensitivity of motion of the
                     optical switch can thus be enhanced. If the slide disc 4 of the present invention
                     is replaced by a ball body, such as that disclosed in the aforesaid conventional position-sensing
                     device shown in Figs. 1 and 2, the curved surface of the ball body may interfere with
                     the light-penetrating portions 51, 52, 53, 54 of the shutter plate 5 and affect the
                     sliding movement of the slide disc 4 on the shutter plate 5. In this case, the sensitivity
                     of the optical switch can be adversely affected.
- 2. In assembly, the sensor unit 3, the shutter plate 5, and the slide disc 4 are consecutively
                     mounted in the casing part 21, after which the cover part 22 covers the casing part
                     21. Hence, only one seamexisting between the casing part 21 and the cover part 22
                     needs to be sealed.
 
          
         
            
            1. An optical switch 
characterized by:
               
               
a housing (2) having a reflecting surface (221), a mounting surface (211) facing said
                  reflecting surface (221), and a receiving chamber (20) formed between said reflecting
                  and mounting surfaces (221, 211), said mounting surface (211) being recessed to form
                  at least two mounting recesses (212);
               
               a sensor unit (3) including a light emitter (31) and at least one light receiver (32)
                  disposed respectively in said mounting recesses (211) and exposed from said mounting
                  surface (211) to face said reflecting surface (221), said light emitter (31) being
                  capable of emitting light to said light receiver (32) through a reflection of said
                  reflecting surface (221); and
               
               a slide disc (4) disposed slidably but not rollably in said receiving chamber (20)
                  and slidable between a blocking position, where said slide disc (4) blocks the light
                  emitted from said light emitter (31) to said light receiver (32), and an unblocking
                  position, where said slide disc (4) allows the light emitted from said light emitter
                  (31) to be received by said light receiver (32).
  
            2. The optical switch of Claim 1, characterized in that said mounting surface (211) is recessed to form three said mounting recesses (212),
               said sensor unit (3) including two said light receivers (32, 33) exposed from said
               mounting surface (211), wherein, when said slide disc (4) is in said blocking position,
               said slide disc (4) blocks the light emitted by said light emitter (31) to one of
               said light receivers (32, 33), so that the other one of said light receivers (32,
               33) can receive the light emitted by said light emitter (31).
 
            3. The optical switch of Claim 1, characterized in that said housing (2) includes a casing part (21) having one open end (213), and a cover
               part (22) covering said open end (213), said casing part (21) having said mounting
               surface (211), said mounting recesses (212), and said receiving chamber (20), said
               cover part (22) having said reflecting surface (221) facing said mounting surface
               (211).
 
            4. The optical switch of Claim 2, characterized in that said receiving chamber (20) has four corners (201, 202, 203, 204), said slide disc
               (4) being slidable from one of said corners (201, 202, 203, 204) to another one of
               said corners (201, 202, 203, 204), said mounting recesses (211) being proximate to
               three of said corners (201, 202, 203, 204).
 
            5. The optical switch of Claim 4, further characterized by a shutterplate (5) mounted on said mounting surface (211) within said receiving chamber
               (20) and having at least two light-penetrating portions (51, 52) aligned with said
               mounting recesses (212), respectively.
 
            6. The optical switch of Claim 5, characterized in that each of said light-penetrating portions (51, 52) is configured as a through hole.
 
            7. The optical switch of Claim 1, characterized in that said slide disc (4) is configured as a cylindrical disk.
 
          
            Amended claims in accordance with Rule 137(2) EPC.
1. An optical switch comprising:
               
               
a housing (2) having a reflecting surface (221), a mounting surface (211) facing said
                  reflecting surface (221), and a receiving chamber (20) formed between said reflecting
                  and mounting surfaces (221, 211), said mounting surface (211) being recessed to form
                  at least two mounting recesses (212);
               
               a sensor unit (3) including a light emitter (31) and at least one light receiver (32)
                  disposed respectively in said mounting recesses (211) and exposed from said mounting
                  surface (211) to face said reflecting surface (221), said light emitter (31) being
                  capable of emitting light to said light receiver (32) through a reflection of said
                  reflecting surface (221);
               
               a slide disc (4) disposed slidablybut not rollably in said receiving chamber (20)
                  and slidable between a blocking position, where said slide disc (4) blocks the light
                  emitted from said light emitter (31) to said light receiver (32), and an unblocking
                  position, where said slide disc (4) allows the light emitted from said light emitter
                  (31) to be received by said light receiver (32); and
               
               a shutter plate (5) mounted on said mounting surface (211) within said receiving chamber
                  (20) and having at least two light-penetrating portions (51, 52) aligned with said
                  mounting recesses (212), respectively, each of said light-penetrating portions (51,
                  52) being configured as a through hole;
               
               wherein said housing (2) includes a casing part (21) having one open end (213), and
                  a cover part (22) covering said open end (213), said casing part (21) having said
                  mounting surface (211), said mounting recesses (212) , and said receiving chamber
                  (20), said cover part (22) having said reflecting surface (221) facing said mounting
                  surface (211);
               
               characterized in that
               
               said slide disc (4) slides in said receiving chamber (20) between said blocking position
                  and said unblocking position when said optical switch vibrates due to an external
                  force or when said housing is turned;
               
               only one of said light-penetrating portions (51, 52) of said shutter plate (5) is
                  covered by said slide disc (4) in said blocking position; and
               
               said slide disc (4) does not cover any of said light-penetrating portions (51, 52)
                  of said shutter plate (5) in said unblocking position.
  
            2. The optical switch of Claim 1, characterized in that said mounting surface (211) is recessed to form three said mounting recesses (212),
               said sensor unit (3) including two said light receivers (32, 33) exposed from said
               mounting surface (211), wherein, when said slide disc (4) is in said blocking position,
               said slide disc (4) blocks the light emitted by said light emitter (31) to one of
               said light receivers (32, 33), so that the other one of said light receivers (32,
               33) can receive the light emitted by said light emitter (31).
 
            3. The optical switch of Claim 2, characterized in that said receiving chamber (20) has four corners (201, 202, 203, 204), said slide disc
               (4) being slidable from one of said corners (201, 202, 203, 204) to another one of
               said corners (201, 202, 203, 204), saidmounting recesses (211) being proximate to
               three of said corners (201, 202, 203, 204).
 
            4. The optical switch of Claim 1, characterized in that said slide disc (4) is configured as a cylindrical disk.